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992.
Nuria C. Bramswig Hermann-Josef Lüdecke Yasemin Alanay Beate Albrecht Alexander Barthelmie Koray Boduroglu Diana Braunholz Almuth Caliebe Krystyna H. Chrzanowska Johanna Christina Czeschik Sabine Endele Elisabeth Graf Encarna Guillén-Navarro Pelin Özlem Simsek Kiper Vanesa López-González Ilaria Parenti Jelena Pozojevic Gulen Eda Utine Thomas Wieland Frank J. Kaiser Bernd Wollnik Tim M. Strom Dagmar Wieczorek 《Human genetics》2015,134(6):553-568
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Paul J. B. Hart Eva Bergman Olle Calles Stina Eriksson Stina Gustafsson Linnea Lans Johnny Norrgård John J. Piccolo Nina Rees Johan Watz Martin Österling Larry A. Greenberg 《Environmental Biology of Fishes》2014,97(5):515-522
Preferring one social partner over another can enhance fitness. This paper reports that juvenile grayling were significantly more likely to enter and forage in new, upstream habitats when paired with familiar versus unfamiliar social partners. Fish paired with unfamiliar partners or when alone were more reluctant to enter the new area. The entry times for both fish in a familiar pair were significantly correlated, but uncorrelated for unfamiliar fish. These differences between familiars and unfamiliars were consistent over a 2-week period. Fish with familiar partners spent more time within three body lengths of each other than did those with unfamiliars. The results are discussed in relation to optimality models of drift foraging, which do not included sociality. It is suggested that the social dimension creates a more dynamic foraging response to variable environmental conditions and could have consequences for growth. 相似文献
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LINA SANDRIN JOËL MEUNIER SHIRLEY RAVEH JEAN‐CLAUDE WALSER MATHIAS KÖLLIKER 《Ecological Entomology》2015,40(2):159-166
1. The patterns of multiple paternity among the progeny of females are key properties of genetic mating systems. Female multiple mating should evolve due to direct or indirect benefits, but it may also partly be driven by the encounter rate with different potential mates. 2. In this study this hypothesis was experimentally tested in the European earwig (Forficula auricularia L.) by establishing experimental mating groups that differed in the number of males and females (i.e. density). The number of sires and mean sibling relatedness in each clutch were estimated using microsatellite‐based paternity analysis. 3. As predicted, the mean number of sires per clutch was significantly increased, and sibling relatedness decreased, in the higher density treatment where more potential male mates were available. This change was less than proportional to the number of males in the mating groups, indicating that mechanisms limiting multiple paternity in large mating groups were involved. There were no significant relationships between female reproductive success or male siring success with morphology (body size, weight, and forceps size). 4. The present results show that multiple paternity in F. auricularia clutches is partly determined by the availability of male mates and suggest that this effect is modulated by mechanisms in males and/or females that limit multiple paternity. 相似文献
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Insect cell metabolism was studied in substrate-limited fed batch cultures of Spodoptera frugiperda (Sf-9) cells. Results from a glucose-limited culture, a glutamine-limited culture, a culture limited in both glucose and glutamine and a batch culture were compared. A stringent relation between glucose excess and alanine formation was found. In contrast, glucose limitation induced ammonium formation, while, at the same time, alanine formation was completely suppressed. Simultaneous glucose and glutamine limitation suppressed both alanine and ammonium formation. Although the metabolism was influenced by substrate limitation, the specific growth rate was similar in all cultures. Alanine formation must involve incorporation of free ammonium, if ammonium formation is mediated by glutaminase and glutamate dehydrogenase, as our data suggest. On the basis of the results, two possible pathways for the formation of alanine in the intermediary metabolism in insect cells are suggested. The cellular yield on glucose was increased 6.6 times during glucose limitation, independently of the cellular yield on glutamine, which was increased 50–100 times during glutamine limitation. The results indicate that alanine overflow metabolism is energetically wasteful and that glutamine is a dispensable amino acid for cultured Sf-9 cells. Preliminary data confirm that glutamine can be synthesised by the cells themselves in amounts sufficient to support growth. 相似文献
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Fridthjof Ökland 《Zoomorphology》1930,20(1):63-131
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